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Crystal structure of rhodopsin in complex with a mini-Go sheds light on the principles of G protein selectivity

机译:视紫红质与mini-Go配合物的晶体结构阐明了G蛋白选择性的原理

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Selective coupling of G protein (heterotrimeric guanine nucleotide–binding protein)–coupled receptors (GPCRs) to specific Gα-protein subtypes is critical to transform extracellular signals, carried by natural ligands and clinical drugs, into cellular responses. At the center of this transduction event lies the formation of a signaling complex between the receptor and G protein. We report the crystal structure of light-sensitive GPCR rhodopsin bound to an engineered mini-Go protein. The conformation of the receptor is identical to all previous structures of active rhodopsin, including the complex with arrestin. Thus, rhodopsin seems to adopt predominantly one thermodynamically stable active conformation, effectively acting like a “structural switch,” allowing for maximum efficiency in the visual system. Furthermore, our analysis of the well-defined GPCR–G protein interface suggests that the precise position of the carboxyl-terminal “hook-like” element of the G protein (its four last residues) relative to the TM7/helix 8 (H8) joint of the receptor is a significant determinant in selective G protein activation.
机译:G蛋白(异三聚体鸟嘌呤核苷酸结合蛋白)偶联受体(GPCR)与特定Gα蛋白亚型的选择性偶联对于将天然配体和临床药物携带的细胞外信号转化为细胞反应至关重要。该转导事件的中心在于受体与G蛋白之间的信号复合物的形成。我们报告光敏GPCR视紫红质的晶体结构绑定到工程的迷你Go蛋白。受体的构象与活性视紫红质的所有先前结构相同,包括与视紫红质的复合物。因此,视紫红质似乎主要采用了一种热力学稳定的活性构象,有效地起到了“结构转换”的作用,从而使视觉系统的效率最大化。此外,我们对定义明确的GPCR-G蛋白界面的分析表明,相对于TM7 /螺旋8(H8),G蛋白(最后四个残基)的羧基末端“钩状”元件的精确位置受体的接头是选择性G蛋白活化的重要决定因素。

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